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革兰氏阳性肺炎链球菌信号肽酶I的生化特性

Biochemical characterization of signal peptidase I from gram-positive Streptococcus pneumoniae.

作者信息

Peng S B, Wang L, Moomaw J, Peery R B, Sun P M, Johnson R B, Lu J, Treadway P, Skatrud P L, Wang Q M

机构信息

Infectious Diseases Research, Lilly Research Laboratories, Indianapolis, Indiana 46285, USA.

出版信息

J Bacteriol. 2001 Jan;183(2):621-7. doi: 10.1128/JB.183.2.621-627.2001.

Abstract

Bacterial signal peptidase I is responsible for proteolytic processing of the precursors of secreted proteins. The enzymes from gram-negative and -positive bacteria are different in structure and specificity. In this study, we have cloned, expressed, and purified the signal peptidase I of gram-positive Streptococcus pneumoniae. The precursor of streptokinase, an extracellular protein produced in pathogenic streptococci, was identified as a substrate of S. pneumoniae signal peptidase I. Phospholipids were found to stimulate the enzymatic activity. Mutagenetic analysis demonstrated that residues serine 38 and lysine 76 of S. pneumoniae signal peptidase I are critical for enzyme activity and involved in the active site to form a serine-lysine catalytic dyad, which is similar to LexA-like proteases and Escherichia coli signal peptidase I. Similar to LexA-like proteases, S. pneumoniae signal peptidase I catalyzes an intermolecular self-cleavage in vitro, and an internal cleavage site has been identified between glycine 36 and histidine 37. Sequence analysis revealed that the signal peptidase I and LexA-like proteases show sequence homology around the active sites and some common properties around the self-cleavage sites. All these data suggest that signal peptidase I and LexA-like proteases are closely related and belong to a novel class of serine proteases.

摘要

细菌信号肽酶I负责分泌蛋白前体的蛋白水解加工。革兰氏阴性菌和阳性菌的该酶在结构和特异性上有所不同。在本研究中,我们克隆、表达并纯化了革兰氏阳性肺炎链球菌的信号肽酶I。致病链球菌产生的一种细胞外蛋白——链激酶的前体,被鉴定为肺炎链球菌信号肽酶I的底物。发现磷脂可刺激该酶的活性。诱变分析表明,肺炎链球菌信号肽酶I的丝氨酸38和赖氨酸76残基对酶活性至关重要,且参与活性位点形成丝氨酸 - 赖氨酸催化二元体,这与LexA样蛋白酶和大肠杆菌信号肽酶I相似。与LexA样蛋白酶类似,肺炎链球菌信号肽酶I在体外催化分子间自我切割,且已在甘氨酸36和组氨酸37之间鉴定出一个内部切割位点。序列分析显示,信号肽酶I和LexA样蛋白酶在活性位点周围显示出序列同源性,在自我切割位点周围具有一些共同特性。所有这些数据表明,信号肽酶I和LexA样蛋白酶密切相关,属于一类新型丝氨酸蛋白酶。

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